Abstract 69: Healthy Dietary Pattern, Blood Transcriptomic Profile, and Risk of Cardiovascular Disease: Findings from the Hispanic Community Health Study/Study of Latinos (HCHS/SOL)
Abstract
Background: A healthy diet is crucial for preventing cardiovascular disease (CVD) by modulating gene expression, but the gene pathways remain poorly studied. Hypothesis: Healthy dietary intake is associated with a favorable blood transcriptomic profile, which in turn is associated with a lower CVD risk. Methods: Among HCHS/SOL participants with dietary and transcriptome data ( n = 6796), we performed cross-sectional analyses to identify whole-blood RNA sequencing (RNA-seq) signatures of a healthy dietary pattern assessed by Alternative Healthy Eating Index (AHEI), where higher scores indicate a healthier diet. We applied Weighted Gene Co-expression Network Analysis (WGCNA) to characterize diet-related gene modules and examined their associations with incident CVD. Results: Out of 18989 RNA-seq features, we identified 375 RNA-seq signatures associated with AHEI (FDR- q <0.10; Fig. A ). These identified RNA-seq signatures were clustered into four co-expressed gene modules ( Fig. B ), including an adaptive immunity module and an innate immunity&oxidative stress module involving IL-17 and NF-κB signaling ( Fig. C ). The adaptive immunity module was positively associated with AHEI and with blood immune traits reflecting adaptive immune activation (e.g., higher proportions of activated CD4+ and CD8+ T lymphocytes). By contrast, the innate immunity&oxidative stress module was negatively associated with AHEI and positively with traits indicative of innate immune activation (e.g., higher neutrophil proportions; Fig. D ). Furthermore, higher levels of adaptive immunity module were associated with a lower CVD risk (HR [95% CI]: 0.84 [0.72–0.98]), whereas higher levels of innate immunity&oxidative stress module were associated with a higher CVD risk (1.19 [1.02–1.39]; Fig. E ). Conclusions: Adherence to a healthy dietary pattern is associated with a favorable blood transcriptomic profile related to adaptive and innate immune pathways, which may help explain the protective association between healthy diet and CVD.
Article Details
Authors (10)
Chengyong Jia
Albert Einstein College of Medicine, Bronx, New York, United States
Anne Justice
Geisinger, Danville, Pennsylvania, United States
Kai Luo
Mariaelisa Graff
Heather Highland
University of North Carolina, Chapel Hill, North Carolina, United States
Tao Wang
Bing Yu
College of Chemistry and Materials Science, Guangdong Provincial Key Laboratory of Supramolecular Coordination Chemistry
Robert Kaplan
Kari North
UNIV OF TX HEALTH SCI CTR HOUSTON, Houston, Texas, United States
Qibin Qi